Institute of Chemical Biology and Nanomedicine, State Key Laboratory of Chemo/Bio-Sensing and Chemometrics, College of Chemistry and Chemical Engineering , Hunan University , Changsha , Hunan 410082 , P. R. China.
Anal Chem. 2018 Nov 20;90(22):13188-13192. doi: 10.1021/acs.analchem.8b04631. Epub 2018 Nov 2.
The efficient detection and in situ monitoring of telomerase activity is of great importance for cancer diagnosis and biomedical research. Here we report for the first time that the development of a novel multivalent self-assembled DNA polymer, constructed through telomerase primer sequence (I) triggered hybridization chain assembly using two functional hairpin probes (tumor-trageting aptamer modified H1 and signal probe modified H2), for sensitive detection and imaging of telomerase activity in living cells. After internalizing into the tumor cells by multivalent aptamer targeting, the I on DNA polymers can be elongated by intracellular telomerase to generate telomere repeat sequences that are complementary with the signal probe, which can proceed along the DNA polymers, and gradually light up the whole DNA polymers, leading to an enhanced fluorescence signal directly correlated with the activity of telomerase. Our results demonstrated that the developed DNA polymer show excellent performance for specifically detecting telomerase activity in cancer cells, dynamically monitoring the activity change of telomerase in response to telomerase-based drugs, and efficiently distinguishing cancer cells from normal cells. The proposed strategy may afford a valuable tool for the monitoring of telomerase activity in living cells and have great implications for biological and diagnostic applications.
端粒酶活性的高效检测和原位监测对于癌症诊断和生物医学研究具有重要意义。在这里,我们首次报道了一种新型多价自组装 DNA 聚合物的开发,该聚合物通过端粒酶引物序列(I)触发杂交链式反应,使用两个功能发夹探针(肿瘤靶向适体修饰的 H1 和信号探针修饰的 H2)构建,用于在活细胞中灵敏检测和成像端粒酶活性。多价适体靶向进入肿瘤细胞后,DNA 聚合物上的 I 可以被细胞内的端粒酶延伸,产生与信号探针互补的端粒重复序列,这些序列可以沿着 DNA 聚合物延伸,并逐渐使整个 DNA 聚合物发光,从而产生与端粒酶活性直接相关的增强荧光信号。我们的结果表明,所开发的 DNA 聚合物在特异性检测癌细胞中端粒酶活性、动态监测端粒酶对基于端粒酶药物的活性变化以及有效区分癌细胞和正常细胞方面表现出优异的性能。该策略可能为在活细胞中端粒酶活性的监测提供有价值的工具,并对生物和诊断应用具有重要意义。